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Newly identified natural high-oleate mutant from Arachis hypogaea L. subsp hypogaea

机译:新发现的来自花生花生的天然高油酸突变体

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Natural genetic variation exists in animals and plants. Mining and utilizing this variation may provide benefits for new breed/cultivar development. From screening over 4000 cultivated peanut germ-plasm accessions, we identified two natural mutant lines (PI 342664 and PI 342666) with 80 % oleic acid by gas chromatography analysis. It is known that FAD2A and FAD2B are the two major genes involved in the conversion of oleic to linoleic acid in peanuts by fatty acid desaturase. Functional mutations in one or both genes can alter the oleate level. By sequencing the coding region of these two genes, we identified a substitution of G448A in FAD2A and a substitution of C301G in FAD2B for both mutant lines. The substitution in FAD2A is the same as a previously identified one, resulting in a missense amino acid substitution of D150N, but the substitution in FAD2B is a new one, resulting in H101D. The new amino acid substitution on FAD2B is located in the first histidine box (one of the active sites) of the fatty acid desaturase and may significantly decrease its activity. Our mutants did not have flowers on the main stem (subspecies hypogaea), but F435 (a previously identified natural high-oleate mutant) had flowers on the main stem (subspecies fastigiata). Therefore, we identified a class of natural mutants from the subspecies hypogaea and provided new additional genetic resources for breeders to use. Our results also demonstrate a good example of the importance and usefulness for preserving natural genetic diversity and utilizing plant germ-plasm collections.
机译:动植物中存在自然遗传变异。开采和利用这种变异可能会为新品种/新品种的开发带来好处。通过筛选4000多个栽培花生种质资源,我们通过气相色谱分析确定了两个天然突变株(PI 342664和PI 342666),其油酸含量为80%。已知FAD2A和FAD2B是涉及花生中通过脂肪酸去饱和酶将油酸转化为亚油酸的两个主要基因。一个或两个基因的功能性突变可改变油酸水平。通过对这两个基因的编码区进行测序,我们确定了两个突变株系中FAD2A中的G448A取代和FAD2B中的C301G取代。 FAD2A中的取代与先前确定的取代相同,导致D150N的错义氨基酸取代,但FAD2B中的取代是新的取代,导致H101D。 FAD2B上的新氨基酸取代位于脂肪酸去饱和酶的第一个组氨酸盒(活性位点之一)中,可能会大大降低其活性。我们的突变体在主茎(hypogaea亚种)上没有花,但是F435(先前鉴定的天然高油酸突变体)在主茎(fastigiata亚种)上有花。因此,我们从低亚种中鉴定出一类天然突变体,并为育种者提供了新的额外遗传资源。我们的结果也证明了保存自然遗传多样性和利用植物种质资源的重要性和实用性。

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